About This Part
The Ericsson RDH 102 100/26 SMF Transceiver is a critical optical module engineered for high-performance data transmission and reception over single-mode fiber optic cables. These transceivers are indispensable components in modern telecommunications networks and data centers, facilitating the robust and efficient transfer of substantial data volumes across significant distances. They are typically deployed within Ericsson's networking equipment, such as routers, switches, and optical transport platforms, to establish high-bandwidth links between network nodes, central offices, or data center facilities. Their single-mode fiber compatibility makes them ideal for long-haul connections and metropolitan area networks where extended reach and high data integrity are paramount. While specific detailed specifications for the FTLX3815M346-ER would require a dedicated datasheet, the "RDH 102 100/26 SMF Transceiver" designation strongly indicates a high-speed capability, likely in the 100 Gigabit Ethernet (100G) range, coupled with a substantial reach over single-mode fiber, potentially up to 26 kilometers. Ericsson's RDH series transceivers are renowned for their reliability and performance within demanding operational environments, ensuring stable and low-latency data throughput. These modules adhere to industry standards for optical interfaces, ensuring seamless interoperability within Ericsson's ecosystem and potentially with other compliant equipment. Revo Distribution Limited specializes in supplying high-quality used and refurbished telecom and data centre equipment, including essential components like this Ericsson RDH 102 100/26 SMF Transceiver. By offering such parts, Revo enables network operators and enterprises to maintain, upgrade, or expand their existing Ericsson infrastructure cost-effectively without compromising on performance or reliability. Our rigorous testing and refurbishment processes ensure that each transceiver meets stringent operational standards, providing a sustainable and economical solution for critical network requirements.